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WKP|Q58418351
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(WKP)Q58418351
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0000-0002-9741-4503
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orcid
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55915007700
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scopus
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(OCoLC)Q58418351
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100
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Margarita Hierro-Oliva
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researcher ORCID ID = 0000-0002-9741-4503
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en
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iso5218
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Margarita Hierro-Oliva
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wetenschapper
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nl
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670
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Author's Bioinspired Quercitrin Nanocoatings: A Fluorescence-Based Method for Their Surface Quantification, and Their Effect on Stem Cell Adhesion and Differentiation to the Osteoblastic Lineage.
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670
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Author's Dendronized Anionic Gold Nanoparticles: Synthesis, Characterization, and Antiviral Activity
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670
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Author's Flavonoid-modified surfaces: multifunctional bioactive biomaterials with osteopromotive, anti-inflammatory, and anti-fibrotic potential
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670
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Author's On the interactions of human bone cells with Ti6Al4V thermally oxidized by means of laser shock processing.
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670
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Author's Surface Topographical Changes of a Failing Acid-Etched Long-Term in Function Retrieved Dental Implant
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670
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Author's Three-dimensional and chemical changes on the surface of a 3-year clinically retrieved oxidized titanium dental implant
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(scopus) 55915007700
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909
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3dimensionalandchemicalchangesonthesurfaceofa3yearclinicallyretrievedoxidizedtitaniumdentalimplant
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Three-dimensional and chemical changes on the surface of a 3-year clinically retrieved oxidized titanium dental implant
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919
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surfacetopographicalchangesofafailingacidetchedlongterminfunctionretrieveddentalimplant
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Surface Topographical Changes of a Failing Acid-Etched Long-Term in Function Retrieved Dental Implant
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ontheinteractionsofhumanbonecellswithti6al4vthermallyoxidizedbymeansoflasershockprocessing
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On the interactions of human bone cells with Ti6Al4V thermally oxidized by means of laser shock processing.
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flavonoidmodifiedsurfacesmultifunctionalbioactivebiomaterialswithosteopromotiveantiinflammatoryandantifibroticpotential
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Flavonoid-modified surfaces: multifunctional bioactive biomaterials with osteopromotive, anti-inflammatory, and anti-fibrotic potential
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dendronizedanionicgoldnanoparticlessynthesischaracterizationandantiviralactivity
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Dendronized Anionic Gold Nanoparticles: Synthesis, Characterization, and Antiviral Activity
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bioinspiredquercitrinnanocoatingsafluorescencebasedmethodfortheirsurfacequantificationandtheireffectonstemcelladhesionanddifferentiationtotheosteoblasticlineage
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Bioinspired Quercitrin Nanocoatings: A Fluorescence-Based Method for Their Surface Quantification, and Their Effect on Stem Cell Adhesion and Differentiation to the Osteoblastic Lineage.
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